Tessellation-based analysis of impurity clustering in the edge plasma of tokamaks

Fuente: arXiv
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Main Authors: Lin, Zetao, Maurel--Oujia, Thibault, Kadoch, Benjamin, Benkadda, Saddrudin, Schneider, Kai
Format: Preprint
Published: 2024
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_version_ 1866916619570118656
author Lin, Zetao
Maurel--Oujia, Thibault
Kadoch, Benjamin
Benkadda, Saddrudin
Schneider, Kai
author_facet Lin, Zetao
Maurel--Oujia, Thibault
Kadoch, Benjamin
Benkadda, Saddrudin
Schneider, Kai
contents Confinement quality in fusion plasma is significantly influenced by the presence of heavy impurities, which can lead to radiative heat loss and reduced confinement. This study explores the clustering of heavy impurity, \textit{i.e.}, Tungsten in edge plasma, using high-resolution direct numerical simulations of the Hasegawa--Wakatani equations. We use Stokes number to quantify the inertia of impurity particles. It is found that particle inertia will cause spatial intermittency in particle distribution and the formation of large-scale structures, \textit{i.e.}, the clustering of particles. The degrees of clustering are influenced by Stokes number. To quantify these observations, we apply a modified Voronoi tessellation, which assigns specific volumes to impurity particles. By determining time changes of these volumes, we can calculate the impurity velocity divergence, which allows to assess the clustering dynamics. To quantify the clustering statistically, several approaches are applied, such as probability density function (PDF) of impurity velocity divergence and joint PDF of volume and divergence.
format Preprint
id arxiv_https___arxiv_org_abs_2409_19423
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Tessellation-based analysis of impurity clustering in the edge plasma of tokamaks
Lin, Zetao
Maurel--Oujia, Thibault
Kadoch, Benjamin
Benkadda, Saddrudin
Schneider, Kai
Plasma Physics
Computational Physics
76Fxx
Confinement quality in fusion plasma is significantly influenced by the presence of heavy impurities, which can lead to radiative heat loss and reduced confinement. This study explores the clustering of heavy impurity, \textit{i.e.}, Tungsten in edge plasma, using high-resolution direct numerical simulations of the Hasegawa--Wakatani equations. We use Stokes number to quantify the inertia of impurity particles. It is found that particle inertia will cause spatial intermittency in particle distribution and the formation of large-scale structures, \textit{i.e.}, the clustering of particles. The degrees of clustering are influenced by Stokes number. To quantify these observations, we apply a modified Voronoi tessellation, which assigns specific volumes to impurity particles. By determining time changes of these volumes, we can calculate the impurity velocity divergence, which allows to assess the clustering dynamics. To quantify the clustering statistically, several approaches are applied, such as probability density function (PDF) of impurity velocity divergence and joint PDF of volume and divergence.
title Tessellation-based analysis of impurity clustering in the edge plasma of tokamaks
topic Plasma Physics
Computational Physics
76Fxx
url https://arxiv.org/abs/2409.19423